Laboratory Electrical Resistivity Studies on Cement Stabilized Soil.

International Scholarly Research Notices Pub Date : 2017-04-30 eCollection Date: 2017-01-01 DOI:10.1155/2017/8970153
Nimi Ann Vincent, R Shivashankar, K N Lokesh, Jinu Mary Jacob
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引用次数: 16

Abstract

Electrical resistivity measurement of freshly prepared uncured and cured soil-cement materials is done and the correlations between the factors controlling the performance of soil-cement and electrical resistivity are discussed in this paper. Conventional quality control of soil-cement quite often involves wastage of a lot of material, if it does not meet the strength criteria. In this study, it is observed that, in soil-cement, resistivity follows a similar trend as unconfined compressive strength, with increase in cement content and time of curing. Quantitative relations developed for predicting 7-day strength of soil-cement mix, using resistivity of the soil-cement samples at freshly prepared state, after 1-hour curing help to decide whether the soil-cement mix meets the desired strength and performance criteria. This offers the option of the soil-cement mix to be upgraded (possibly with additional cement) in its fresh state itself, if it does not fulfil the performance criteria, rather than wasting the material after hardening.

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水泥稳定土的室内电阻率研究。
本文对新配制的未固化和固化的水泥土材料进行了电阻率测量,讨论了水泥土性能的控制因素与电阻率之间的关系。传统的水泥土质量控制往往涉及大量材料的浪费,如果它不符合强度标准。本研究发现,随着水泥掺量的增加和养护时间的延长,水泥土中电阻率的变化趋势与无侧限抗压强度变化趋势相似。利用水泥土样品在新制备状态下,养护1小时后的电阻率,建立了预测水泥土混合料7天强度的定量关系,有助于确定水泥土混合料是否满足所需的强度和性能标准。如果不符合性能标准,这就提供了一种选择,即在新状态下对水泥土混合物进行升级(可能是添加额外的水泥),而不是在硬化后浪费材料。
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